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Structural stability and uniformity of magnetic Pt-13 nanoparticles in NaY zeolite

机译:结构稳定性和磁场的均匀性Pt-13不沸石纳米粒子

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摘要

Based on first-principles calculations, the structural stability and magnetic variety of Pt-13 nanoparticles encapsulated in a NaY zeolite are investigated. Among 50 stable isomers in the gas phase, due to geometrical constraints, only about 1/3 of those clusters can be inserted in the zeolite pores. Severe structural rearrangements occur depending on whether the solid angle at the Pt vertex bound to the super-cage is larger than 2 sr (i.e., icosahedron). The most relevant example is the structural instability of the icosahedron and, when including van der Waals dispersion forces the opening of the gas phase global minimum moves towards a new L-shaped cubic wire, otherwise unstable. The total magnetisation of the encapsulated Pt-13 decreases due to the stabilisation of less coordinated isomers, with the majority of clusters characterised by a total magnetisation of 2(mu B), while the majority of free clusters exhibit a threefold value. This analysis allows the understanding of the magnetic behaviour observed in recent experiments through the variety of the isomers which can be accommodated in the zeolite pore.
机译:采用基于计算基础上,结构稳定性和磁性的Pt-13纳米颗粒封装在一个不沸石正在调查中。气相,由于几何约束,只有约1/3的集群可以插入沸石孔。根据是否发生重组立体角Pt绑定到顶点老super-cage大于2(即二十面体)。二十面体的结构不稳定,当包括范德华色散力气相的全球最低向一个新的l型立方线,否则不稳定的。封装Pt-13减少造成的稳定的协调同分异构体,集群的特点是总量的绝大多数磁化强度的2(μB),而大多数的自由簇表现出三倍的价值。分析允许对磁的理解最近实验通过行为观察各种各样的的同分异构体适应在沸石孔。

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